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Nanofilm-coated long-period fiber grating humidity sensors for corrosion detection in structural health monitoring

机译:纳米膜涂覆的长周期纤维光栅湿度传感器,用于结构健康监测中的腐蚀检测

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Long-period gratings (LPGs) have shown their significant promising applications in sensors owing to the attractive features that they posses such as small size, immunity for electromagnetic interference, geometric versatility, multiplexing capability, and resistance to corrosive and hazardous environments. Recent researches have revealed that LPGs written on the standard optical fibers could be used as a powerful sensing platform for structural health monitoring. In this work, we inscribe LPGs into SMF-28 optical fiber by focused-beam CO_2 laser, demonstrating as a refractive index sensor for nondestructive chemical detections in the civil infrastructures. Although evanescent-field based LPG sensors have been applied in quantitatively monitoring chemical analytes including moisture, chloride, and corrosion by-product, etc., the sensitivity, selectivity, and response time as well as thermo-stability of such sensors are still the issues for some special purposes. In order to improve those characteristics of the sensors, we propose two types of nano-film to be coated in grating region by electrostatic self-assembly (ESA) deposition processing. The primary coating does not affect on LPG transmission parameters such as resonance wavelength and its intensity that can be used for sensing, but it increases the sensitivity to refractive index change of surrounding material. The secondary coating is for selectively absorption of analyte molecule of interest. Response time of the nanofilm-coated LPG sensor is dependent on the analyte absorption and de-absorption rates as well as the thicknesses of the coating materials, which is also investigated. Multi-channel sensor system is being designed to monitor different analytes simultaneously, which is continuing to further explore the monitoring of structural health conditions through in situ measurements of corrosion in the concrete structures.
机译:长周期光栅(LPG)由于其具有的吸引人的特性(例如小尺寸,抗电磁干扰性,几何通用性,多路复用能力以及对腐蚀性和危险环境的抵抗力)而在传感器中显示出了巨大的前景可观的应用。最近的研究表明,写在标准光纤上的液化石油气可以用作结构健康监测的强大传感平台。在这项工作中,我们通过聚焦光束CO_2激光将LPG刻写到SMF-28光纤中,证明它是用于民用基础设施中非破坏性化学检测的折射率传感器。尽管基于消逝场的LPG传感器已用于定量监测包括水分,氯化物和腐蚀副产物等在内的化学分析物,但此类传感器的灵敏度,选择性和响应时间以及热稳定性仍然是问题。出于某些特殊目的。为了改善传感器的这些特性,我们提出了两种类型的通过静电自组装(ESA)沉积工艺在光栅区域中涂覆的纳米膜。底涂层不会影响液化石油气的传输参数,例如共振波长及其可用于传感的强度,但会增加对周围材料折射率变化的敏感性。第二涂层用于选择性吸收感兴趣的分析物分子。涂有纳米膜的LPG传感器的响应时间取决于分析物的吸收和解吸速率以及涂层材料的厚度,对此也进行了研究。多通道传感器系统旨在同时监测不同的分析物,并正在通过对混凝土结构中的腐蚀进行现场测量来继续探索对结构健康状况的监测。

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